One of the main reasons why back-contact (PUM) cells stay somewhat behind in efficiency is because of their lower shunt resistance. A simple method was developed to determine the shunt resistance of the individual process-induced shunt paths. These contributions have led to an electrical model describing the process-induced shunt paths. Individual shunt paths were analysed in detail. Changes in processing were introduced to eliminate the shunting problems. These changes resulted in the shunt resistances beyond 5 kcm2 on 225 cm2 cells with industrial processing
The presence of undetermined shunt pathways in CIGS solar cells can be severely limiting to the repr...
Shunt defects influence the output performance of a solar cell or a module negatively. Extensive stu...
Aiming for industrial solar cell fabrication the ratio of costs to watt peak has to be lowered [1]. ...
The paper presents the results of investigation on the influence of an ohmic shunt located at variou...
ABSTRACT: This paper discusses an improved shunt isolation process to improve the efficiency and rev...
This paper presents an extensive study of how a solar cell with low shunt resistance can affect the ...
Lock-in thermography (LIT) is until now the most successful technique for imaging local inhomogeneit...
This paper presents an extensive study of how a solar cell with low shunt resistance can affect the ...
The efficiency of the solar cell can be degraded drastically by the shunts, some of which were origi...
In this paper we discuss the effect of shunt resistance on the electro-optical characteristics of mu...
In this paper we discuss the effect of shunt resistance on the electro-optical characteristics of mu...
Shunting is one of the key issues in industrial silicon solar cells which degrade cell performance. ...
The study of the degradation of silicon solar cells submitted to reverse bias stress is of crucial i...
The non-uniform presence of shunting defects is a significant cause of poor reproducibility across l...
The current-voltage (I-V) characteristics of industrially fabricated, crystalline silicon solar cell...
The presence of undetermined shunt pathways in CIGS solar cells can be severely limiting to the repr...
Shunt defects influence the output performance of a solar cell or a module negatively. Extensive stu...
Aiming for industrial solar cell fabrication the ratio of costs to watt peak has to be lowered [1]. ...
The paper presents the results of investigation on the influence of an ohmic shunt located at variou...
ABSTRACT: This paper discusses an improved shunt isolation process to improve the efficiency and rev...
This paper presents an extensive study of how a solar cell with low shunt resistance can affect the ...
Lock-in thermography (LIT) is until now the most successful technique for imaging local inhomogeneit...
This paper presents an extensive study of how a solar cell with low shunt resistance can affect the ...
The efficiency of the solar cell can be degraded drastically by the shunts, some of which were origi...
In this paper we discuss the effect of shunt resistance on the electro-optical characteristics of mu...
In this paper we discuss the effect of shunt resistance on the electro-optical characteristics of mu...
Shunting is one of the key issues in industrial silicon solar cells which degrade cell performance. ...
The study of the degradation of silicon solar cells submitted to reverse bias stress is of crucial i...
The non-uniform presence of shunting defects is a significant cause of poor reproducibility across l...
The current-voltage (I-V) characteristics of industrially fabricated, crystalline silicon solar cell...
The presence of undetermined shunt pathways in CIGS solar cells can be severely limiting to the repr...
Shunt defects influence the output performance of a solar cell or a module negatively. Extensive stu...
Aiming for industrial solar cell fabrication the ratio of costs to watt peak has to be lowered [1]. ...